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NXP is a recognized automotive market leader in Motion Sensors, Pressure Sensors, and Magneto-Resistive Sensors with an ever growing base of products and solutions. Join this training session to learn about the latest evolutions of the sensor product roadmaps and targeted applications.
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Starting with the description of the differences between the many BLE standards, this presentation will provide a clear understanding of the NXP BLE roadmap from the MICR team. It will detail the HW and SW solutions that are in production today vs. the ones that are going to hit the market in the coming quarters. The presenter will also deliver the latest information regarding the validation of the KW35/36A program that specifically targets automotive and industrial applications. Indication of the future direction for wireless connectivity will close the presentation, providing a synergistic perspective with the AUTO developments.
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During that session, attendees will learn how to integrate NFC readers component into an industrial or consumer devices, from PCB layout to FCC certification and covering considerations for antenna design, software development and specific application certification requirements like EMVCo.
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Join this session to learn how to take advantage of the innovative features of LPC84x MCU family, the first of three LPC800 releases planned for 2017. Through product feature training and demonstrations, we will show how these low-power, ARM® Cortex®-M0+ based MCUs offer 8-bit simplicity for today’s entry-level 32-bit microcontroller market. We expect that you will leave this session with the right training and evaluation boards to get started immediately in your own embedded development.
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Learn about vision processing and technical capabilities of S32V’s dual-APEX acceleration engines, multi-core A53 processors, on-chip image signal processor (ISP) and Vivante GC3000 GPU which differentiates S32V from other ARM® based processors that can’t meet the same performance/power envelope. Attendees will get hands-on experience using the SBC-S32V234 SOM hardware and free Vision SDK to demonstrate software for Lane Departure Warning (LDW), Feature Detection using Lukas-Kanade and Pedestrian Detection applications.
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Introduction into secure element and use case overview secure element complementing secure µCs inside a car security infrastructure. Overview on tool chain including applet and secure gateway demonstrator.
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Wireless (802.11) deployments are slated to overtake Ethernet switching revenue by the later part of the decade. Along with that volume, the new 802.11ax standard will deliver a 300% increase in useable performance along with higher density access for schools, airports, stadiums etc. Another driver is the demand for high bandwidth wireless within the home. Come learn about NXP's new Layerscape LA1575 and other innovative, integrated, programmable solutions available to address these increasing demands for wireless performance.
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Secure Connected & Automated Vehicles ADAS: NXP Secure V2X Solution  ADAS: Smart Actuators—Enabling Autonomous Vehicles  Abstracting Inter Platform Communication in Automotive  Automotive Semiconductor for Purchasing/Buyer  Automotive Sensor Overview  Component Selection—The Make-or-Break Milestone Towards Autonomous Vehicles  ePowertrain: Battery Management Applications  ePowertrain: General Purpose MCUs - S32K Overview and Solutions  ePowertrain: NXP Portfolio for the Electrification of Vehicles  ePowertrain: Simplify your High Voltage / High Current Inverter through Advancements in IGBT Gate Drive Integrated Drivers  Green Hills: Automotive Cybersecurity Year in Review  Green Hills: Secure Hypervisor For Safety Integrated Cockpits Hands-On Workshop: MPC574xG SDK for Gateway  Hands-On Workshop: S32 SDK for S32K  Hands-On Workshop: Using S32V’s Dual-APEX Engines for High-Performance/Low-Power Computer Vision and ADAS Safety Applications  i.MX 8 and 8X Applications Processor Overview  Infotainment: Accelerate Your Designs with i.MX 8 Software  Infotainment: Introduction to NXP IVI Solution to Accelerate Customer Time-to-Market  Infotainment: Tuners – Mercury + Titan ISO26262/IEC61508 Functional Safety Overview  MagniV® Based High Current 3 phs Motor Control Solutions  RadarSDK for S32R Processors  Security & IVN: Automotive Ethernet PHY+ Software  Security & IVN: Automotive Securtiy Product Features  Security & IVN - Introduction to Using MPC574xG/C/B (Calypso) SDK for Gateway Applications  Security & IVN: NXP Automotive Cyber Security  Security & IVN: NXP Car Access with NFC and RF Auto  Tools and Enablement: Automotive Microcontrollers and Processors Portfolio Overview  Tools and Enablement - S32 Design-Studio – How to Design and What to Expect from NXP's Free Software Tools  Tools and Enablement: SqueezeNet CNN on S32V234  Tools and Enablement: The Software Enablement of BlueBox v2.0: From Boot to ADAS Enablement  Smart Buildings & Consumer Goods Design Challenges of Portable RF Cooking Applications  Get the Most Sound from the Small Speakers in Portable Devices  Google™ Home and NXP®: Android Things, Google Assistant and Chromecast™ Built-in  i.MX 8M Processor Overview and the Road Ahead  Modular IoT Framework  San Jose: Getting Started with Kinetis KW41Z - BLE/802.15.4 Solutions for the IoT  San Jose: Hands-On Workshop: BLE and Thread™ Using Kinetis® KW41Z  AMF-CNS-T2685_BLE Beacon Lab  AMF-CNS-T2685_Thread+BLE Lab  AMF-CNS-T2685_BLE HRS Lab  AMF-CNS-T2685_OTAP Lab  AMF-CNS-T2685_Thread Lab  San Jose: Low-Power i.MX Applications Processors Overview  San Jose: NFC in Consumer Electronics and Home Appliances  Secure Authentication for Anti-Counterfeit Applications  Sensor Products for IoT and IMM  The More (Memory), the Merrier: Learn About Using the K27/K28 Series for Highly-Integrated Next-Generation IoT Applications  Voice Control Solutions: Creating Amazon® Alexa® Devices with i.MX  Secure Mobile, Healthcare & Wearables Designing with the New Ultra-Low-Power BLE System on Chip  Smart Machinery & Industrial Automation Process for Designing an NFC Reader Application  Enabling Design, Technologies & Solutions All You Need to Know About DDR4  ARM: Hands-On Workshop: Developing ARM® mbed™ OS Applications with NXP Platforms  Boost Your Productivity with CodeWarrior® Development Tools for ARM®v8 Architecture  Hands-On Workshop: Using MCUXpresso SDK  Introduction to the Next-Generation USB Type-C Connector and NXP’s End-to-End Solution  It’s All About the Space: Printed Circuit Board Design for EMC  LPC800 MCUs Technical Overview: NXP’s Fastest Growing Portfolio for the Broad, 8-bit Alternative Market  Micron’s Memory Solutions for the New i.MX 8 Microprocessor  NXP’s Next-Generation Layerscape Linux® SDK  Overview of the I3C Interface, Successor of the Well-Known I2C Interface  San Jose: Hands-On Workshop: MCUXpresso Software and Tools Hands-On Workshop: MCUXpresso Software and Tools_Lab Guide.pdf  Securing the Product Life Cycle  Speed Your Time-to-Market: NXP Software and Services Providing a Competitive Advantage  Smart Networks & Computing Discover the Latest Cost-Effective 64-bit ARM® Offerings from NXP  Enabling a New Class of Low-Powered Applications with Line-Rate Networking and 64-bit Performance  How Far Can You Go with NXP's Flexible Layerscape Portfolio?  Learn About New NXP High Performance, Integrated, Programmable Wi-Fi, Based on the New Upcoming Standards with Solutions Focusing on Home, Office and Industrial Environments  Move from Physical to Virtual Network Functions on ARM® QorIQ Platforms Using KVM Virtual Machines and Docker™ Containers  New Kid on the Block - 60 GHz Wi-Fi  NXP RF Solutions for IoT to Deliver Reliable, High-Performance Wireless Connections  San Jose: Smart, Secured IoT Gateway Platform with Sensor Fusion, Local and Cloud Analytic  San Jose & Westford: Leverage NXP Security and Trust Features for Your System  User Space Networking: Using and Choosing Between ODP and DPDK for ARM Platforms 
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i.MX software IP inventory continues to grow. This session will provide an overview of the software available to you that will accelerate time-to-market and reduce project risk, namely: Audio Video Bridging (AVB), Trusted Execution Environment (TEE), Tessellation Run Length Encoding (TRLE), Android Auto / Apple Carplay, Miracast for Linux and HDCP2.x, AUTOSAR Microcontroller Abstraction Layer (MCAL) for i.MX, Fastboot/HAB, 360 SurroundView Monitoring and Rear View Camera (RVC).
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This one hour session will introduce the architecture, block diagrams and products of NXP’s electric vehicles (EV) and hybrid electric vehicles (HEV) portfolio for electric drive trains. Areas of focus include battery management, microprocessors for drive control, system basis chips, IGBT and MOSFET gate drivers and power modules for high voltage and 48V inverters. A leader in functional safety, NXP’s safety case for EV and HEV will be discussed. How we enable the customer design through evaluation boards, software and reference designs will be reviewed.
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Learn how to get started designing a Bluetooth® low energy or Thread IoT product based on NXP's Kinetis KW41Z multi-protocol BLE + 802.15.4 wireless connectivity solution.
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Bluetooth speakers and headsets, printers, cameras, projectors, set-top-boxes, TVs, Wi-Fi routers, fridges and washing machines, they all have one thing in common: Near-field-communication (NFC) which allows new features and easier handling. Just bringing two NFC-enabled devices close together is all it takes to create a connection. Accessories and consumables can be identified and authenticated without any user interaction. And commissioning an IoT node into a wireless network has never been as easy as it is now with NFC.
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The low-power i.MX portfolio's objective is to serve as the entry level for application processors while optimizing on performance and power consumption. Join this session to learn about the latest low-power i.MX products, key differentiators and target markets/applications.
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Learn how to develop a wireless connected product using BLE and/or Thread protocols.
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This hands-on session introduces the MCUXpresso suite of tools (IDE, SDK, Config Tools) and shows users how to rapidly start development with thousands of Kinetis and LPC MCUs based on the ARM® Cortex®-M core. Using either Kinetis or LPC development hardware, attendees will build a custom SDK, configure pins and clocks settings, generate a project, import and debug an application.
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Take an in depth look at the features and capabilities of NXP’s latest 64-bit ARM® offerings. LS1012A and LS1043A are based on ARM Cortex®-A53 and LS1046A uses the ARM Cortex-A72 processor.  This session will showcase many features you can use to incorporate these cost effective SOCs in your next design.
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Come see how new types of low- or battery-powered and space-constrained applications are made possible by the latest innovations in communications processors. Applications include portable storage, IoT gateways and embedded control.
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As we race through the age of ubiquitous connectivity with insatiable demand for data, the need for high-speed connectivity solutions is more evident than ever. 60 GHz or 802.11ad Wi-Fi is the new kid taking over the block - be it in homes or in offices, high density indoor or outdoor spaces, fronthaul or backhaul applications, it's everywhere! What's more is that this space is being primarily influenced by a lot of new tier 2 players who have innovative approaches to make the best use of this multi-gigabit rate spectrum. Come join NXP to learn how our SoCs are integral to furthering this ecosystem.
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Learn how to move from physical to virtual network functions (VNFs) on ARM QorIQ platforms using KVM virtual machines and Docker containers with native DPAA2 and virtual virtio devices. Leverage packet processing, crypto acceleration and advanced offloads from DPDK/ODP and Linux native guest applications. Connect VNFs through virtual switching either using optimized user space implementations or offloading datapath into DPAA2 Advanced IO Processor. Make use of the switching functions provided by DPAA2 integrated Edge Virtual Bridge and L2 Switch. Leverage OPNFV integration and take advantage of distributed VNFs via Service Function Chaining.
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Learn how NXP provides support for ODP and DPDK without sacrificing performance. Learn how we're leveraging specific acceleration advantages of the NXP data plane architectures, such as packet IO, classification, scheduling, crypto, etc. This session will provide a comparative analysis and evolution of both of these open-source, platform independent and vendor-neutral standard APIs for optimized packet processing and traditional networking services in user space. It will help you choose the right API for your project, based on design requirements.   We will also cover how the ODP and DPDK can provide the necessary infrastructure for virtualized environments.
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